首页> 外文期刊>Journal of Cell Science >The Trypanosoma brucei signal recognition particle lacks the Alu-domain-binding proteins: purification and functional analysis of its binding proteins by RNAi.
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The Trypanosoma brucei signal recognition particle lacks the Alu-domain-binding proteins: purification and functional analysis of its binding proteins by RNAi.

机译:布氏锥虫信号识别颗粒缺乏Alu结构域结合蛋白:RNAi对结合蛋白的纯化和功能分析。

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摘要

Trypanosomes are protozoan parasites that have a major impact on human health and that of livestock. These parasites represent a very early branch in the eukaryotic linage, and possess unique RNA processing mechanisms. The trypanosome signal recognition particle (SRP) is also unusual in being the first signal recognition particle described in nature to be comprised of two RNA molecules, the 7SL RNA and a tRNA-like molecule. In this study, we further elucidated the unique properties of this particle. The genes encoding three SRP proteins (SRP19, SRP72 and SRP68) were identified by bioinformatics analysis. Silencing of these genes by RNAi suggests that the SRP-mediated protein translocation pathway is essential for growth. The depletion of SRP72 and SRP68 induced sudden death, most probably as a result of toxicity due to the accumulation of the pre-SRP in the nucleolus. Purification of the trypanosome particle to homogeneity, by TAP-tagging, identified four SRP proteins (SRP72, SRP68, SRP54 and SRP19), but no Alu-domain-binding protein homologs. This study highlights the unique features of the trypanosome SRP complex and further supports the hypothesis that the tRNA-like molecule present in this particle may replace the function of the Alu-domain-binding proteins present in many eukaryotic SRP complexes.
机译:锥虫是原生动物的寄生虫,会对人类和牲畜的健康产生重大影响。这些寄生虫代表真核细胞中非常早的分支,并具有独特的RNA加工机制。锥虫信号识别颗粒(SRP)也很不寻常,它是自然界中第一个由两个RNA分子(7SL RNA和类tRNA分子)组成的信号识别颗粒。在这项研究中,我们进一步阐明了这种颗粒的独特性质。通过生物信息学分析鉴定了编码三种SRP蛋白(SRP19,SRP72和SRP68)的基因。 RNAi使这些基因沉默,表明SRP介导的蛋白易位途径对于生长至关重要。 SRP72和SRP68的耗尽会导致猝死,这很可能是由于前SRP在核仁中积聚而产生的毒性所致。通过TAP标记将锥虫颗粒纯化至同质,鉴定出四种SRP蛋白(SRP72,SRP68,SRP54和SRP19),但没有Alu结构域结合蛋白同源物。这项研究突出了锥虫SRP复合物的独特特征,并进一步支持了这种颗粒中存在的类似tRNA的分子可能取代许多真核SRP复合物中存在的Alu结构域结合蛋白的功能的假说。

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